From standards-based engineering to a validated, delivery-ready system
August 2026 | Suzhou, Kína

SCPUR has completed the assembly, software commissioning, factory performance verification and transport preparation of its SC-29461-1 Gas Turbine Air Intake Filter Test System. The system has now been shipped to an overseas customer.
A Multi-Standard Platform for Gas Turbine Air Intake Filter Testing
Designed for evaluating gas turbine air intake filters under demanding operating conditions, the system is built around ISO 29461-1 and incorporates test workflows associated with ISO 16890, ISO 29463-5, IN 1822-5 és EN 779.
Within one integrated platform, it supports airflow-resistance characteristics, fractional efficiency, overall efficiency, MPPS evaluation, dust loading and dust holding performance. Test control, adatfeldolgozás, curve generation and report output are coordinated through the system software.
The core engineering task was not simply to combine individual instruments, but to bring aerosol generation, upstream and downstream sampling, részecskemérés, dust feeding, mérés, airflow and pressure control, and multiple standards-based software workflows together as one stable and repeatable test system.
Engineering Verified Through Sustained Testing
From full-system commissioning to the final pre-shipment review, the project team carried out extended trial operation and continuous optimization. Verification covered airflow and pressure measurement and control, duct leakage, velocity uniformity, DEHS and KCl aerosol stability, upstream/downstream sampling changeover, részecskemérés, dust loading and weighing, as well as software data processing and report generation.
Filters of different grades and constructions were used in actual test runs to confirm the coordination between the individual test paths and the stability of the complete system. This was manufacturer factory verification of the delivered equipment, not a third-party product certification.

Prepared for International Transport and On-Site Reassembly
To support safe transport and efficient restoration at the customer site, the system was divided into clearly identified modules and packed with dedicated protective measures. Power cables, control cables, pneumatic lines, aerosol lines and sampling lines disconnected for shipment were labelled at both ends for straightforward reconnection. During final packing, the team checked every fastening point and protective layer to keep each module firmly secured throughout long-distance transport.
The delivery package also includes installation guidance, reconnection records, tools, spare parts and consumables needed for subsequent installation, commissioning and operator training.

A Delivery That Completes the Engineering Loop
This shipment marks the completion of a full engineering cycle: standards interpretation, system design, mechanical manufacturing, instrument integration, software development, system verification and delivery execution. After the equipment arrives, SCPUR will continue to support installation confirmation, remote commissioning and operator training.
Built for standards · Proven in production















